Customize Consent Preferences

We use cookies to help you navigate efficiently and perform certain functions. You will find detailed information about all cookies under each consent category below.

The cookies that are categorized as "Necessary" are stored on your browser as they are essential for enabling the basic functionalities of the site. ... 

Always Active

Necessary cookies are required to enable the basic features of this site, such as providing secure log-in or adjusting your consent preferences. These cookies do not store any personally identifiable data.

No cookies to display.

Functional cookies help perform certain functionalities like sharing the content of the website on social media platforms, collecting feedback, and other third-party features.

No cookies to display.

Analytical cookies are used to understand how visitors interact with the website. These cookies help provide information on metrics such as the number of visitors, bounce rate, traffic source, etc.

No cookies to display.

Performance cookies are used to understand and analyze the key performance indexes of the website which helps in delivering a better user experience for the visitors.

No cookies to display.

Advertisement cookies are used to provide visitors with customized advertisements based on the pages you visited previously and to analyze the effectiveness of the ad campaigns.

No cookies to display.

Transgenic Models

Achieve targeted expression of a foreign coding sequence, such as Cre recombinase, at a specific genomic locus like ROSA, or opt for non-specific expression through random transgenesis in mice.


Unlock the full potential of your research with the Mouse Biology Program’s (MBP) specialized transgenic mouse models. Utilizing advanced techniques tailored to each project’s unique requirements, MBP ensures that every model is optimally designed for specific research goals.

These custom-made models are critical for many studies, including gene function analysis, disease modeling, and investigating the molecular effects of genetic modifications on other alleles and genomic sequences. By providing precisely engineered models, MBP empowers researchers to delve deeper into complex biological processes and accelerate scientific discoveries.

MBP’s comprehensive services include cutting-edge techniques such as pronuclear microinjection, embryonic stem cell manipulation, CRISPR/Cas9 gene editing, and conditional recombination. These state-of-the-art approaches offer powerful tools to study intricate biological mechanisms, test potential therapies, and uncover the underlying causes of genetic disorders.

By choosing MBP’s customized transgenic models, you’re not just advancing your research—you’re contributing to breakthroughs that can translate into clinical applications and improve human health. Partner with MBP to elevate your scientific endeavors and achieve your research objectives more efficiently and effectively.